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Home » An improved Large-scale 3D Vision Dataset for Compositional Recognition
arXiv AI

An improved Large-scale 3D Vision Dataset for Compositional Recognition

Advanced AI BotBy Advanced AI BotApril 30, 2025No Comments2 Mins Read
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[Submitted on 27 Oct 2023 (v1), last revised 28 Apr 2025 (this version, v3)]
Authors:Habib Slim, Xiang Li, Yuchen Li, Mahmoud Ahmed, Mohamed Ayman, Ujjwal Upadhyay, Ahmed Abdelreheem, Arpit Prajapati, Suhail Pothigara, Peter Wonka, Mohamed Elhoseiny

View a PDF of the paper titled 3DCoMPaT$^{++}$: An improved Large-scale 3D Vision Dataset for Compositional Recognition, by Habib Slim and 10 other authors

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Abstract:In this work, we present 3DCoMPaT$^{++}$, a multimodal 2D/3D dataset with 160 million rendered views of more than 10 million stylized 3D shapes carefully annotated at the part-instance level, alongside matching RGB point clouds, 3D textured meshes, depth maps, and segmentation masks. 3DCoMPaT$^{++}$ covers 41 shape categories, 275 fine-grained part categories, and 293 fine-grained material classes that can be compositionally applied to parts of 3D objects. We render a subset of one million stylized shapes from four equally spaced views as well as four randomized views, leading to a total of 160 million renderings. Parts are segmented at the instance level, with coarse-grained and fine-grained semantic levels. We introduce a new task, called Grounded CoMPaT Recognition (GCR), to collectively recognize and ground compositions of materials on parts of 3D objects. Additionally, we report the outcomes of a data challenge organized at CVPR2023, showcasing the winning method’s utilization of a modified PointNet$^{++}$ model trained on 6D inputs, and exploring alternative techniques for GCR enhancement. We hope our work will help ease future research on compositional 3D Vision.

Submission history

From: Habib Slim [view email]
[v1]
Fri, 27 Oct 2023 22:01:43 UTC (21,166 KB)
[v2]
Tue, 12 Mar 2024 11:52:42 UTC (23,149 KB)
[v3]
Mon, 28 Apr 2025 19:48:46 UTC (30,361 KB)



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